Maojiang Zhang
Papers
1
Total Citations
31
H-Index
1
About
Maojiang Zhang is a leading materials scientist whose research focuses on the development of multifunctional, stretchable electronic textiles and advanced electromagnetic interference (EMI) shielding materials. His most cited work, a 2020 study on a stretchable conductive Ni@Fe₃O₄@Polyester fabric strain sensor, has garnered 31 citations for its pioneering demonstration of a negative resistance variation mechanism—a counterintuitive property that enables highly sensitive, durable wearable sensors. This innovation bridges the gap between mechanical deformation and electrical response, offering new pathways for smart fabrics that can simultaneously monitor strain and block electromagnetic radiation. Zhang’s contributions are pivotal for next-generation wearable electronics, where flexibility, conductivity, and shielding are essential. By integrating magnetic nanoparticles with conductive networks, he has advanced the design of robust, scalable materials for health monitoring, human-machine interfaces, and defense applications. His work is widely recognized for its practical impact, inspiring further research into hybrid textile-based sensors and EMI shields.
Research Focus
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Top Papers
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